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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Promising Approach for Recycling of Spent CIGS Targets by Combining Electrochemical Techniques with Dehydration and Distillation
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Promising Approach for Recycling of Spent CIGS Targets by Combining Electrochemical Techniques with Dehydration and Distillation

机译:通过将电化学技术与脱水和蒸馏结合来回收废CIGS靶标的有希望的方法

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摘要

This study proposes an innovative approach to separate and recover copper, indium, gallium, and selenium (CIGS) from spent CIGS targets, which combines electrochemical techniques with dehydration and distillation. The leaching solution of the CIGS first underwent a two-step electrodeposition process to recover selenium and copper. Then, the remaining solution was distilled to recycle HCl and crystallize indium and gallium chlorides. Next, the as-obtained hydrates were dehydrated by refluxing thionyl chloride (SOCl2). Afterward, anhydrous InCl3 was recovered and separated from GaCl3 by a simple filtration, and the latter was separated from SOCl2 by distillation. The recovery of indium was ca. 99.99% with a purity of ca. 99.99%, while ca. 99.98% of gallium was recovered with a purity of ca. 99.99%. Both the recovery and purity are the highest to the best of our knowledge. The separation process was rationally designed to take full advantage of the potential difference of all the elements and the property of the dehydrating agent. This is an environmentally benign, economical, and practical method to recycle spent CIGS efficiently.
机译:本研究提出了一种创新的方法来分离和回收来自CIGS靶标的铜,铟,镓和硒(CIGS),其将电化学技术与脱水和蒸馏结合起来。 CIGS的浸出溶液首先经历了两步电沉积法以回收硒和铜。然后,蒸馏剩余的溶液以再循环HCl并结晶铟和氯化镓。接下来,通过回流亚硫酰氯(SoCl2)脱水,得到的水合物。然后,通过简单的过滤回收并用GaCl 3分离无水30,通过蒸馏将后者与SoCl2分离。铟的恢复是加利福尼亚州。 99.99%,纯度为CA。 99.99%,而CA。 99.98%的镓用纯度回收了纯度。 99.99%。恢复和纯度都是我们知识中最高的。分离过程是合理的设计,以充分利用脱水剂的所有元素和性质的潜在差异。这是一种环境良性,经济,实用的方法,可有效地回收CIGS。

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